Paper
3 October 2006 2D optical beam splitter using diffractive optical elements (DOE)
Fung J. Wen, Po S. Chung
Author Affiliations +
Proceedings Volume 6351, Passive Components and Fiber-based Devices III; 63510U (2006) https://doi.org/10.1117/12.691058
Event: Asia-Pacific Optical Communications, 2006, Gwangju, South Korea
Abstract
A novel approach for optical beam distribution into a 2-dimensional (2-D) packaged fiber arrays using 2-D Dammann gratings is investigated. This paper focuses on the design and fabrication of the diffractive optical element (DOE) and investigates the coupling efficiencies of the beamlets into a packaged V-grooved 2x2 fibre array. We report for the first time experimental results of a 2-D optical signal distribution into a packaged 2x2 fibre array using Dammann grating. This grating may be applicable to the FTTH network as it can support sufficient channels with good output uniformity together with low polarization dependent loss (PDL) and acceptable insertion loss. Using an appropriate optimization algorithm (the steepest descent algorithm in this case), the optimum profile for the gratings can be calculated. The gratings are then fabricated on ITO glass using electron-beam lithography. The overall performance of the design shows an output uniformity of around 0.14 dB and an insertion loss of about 12.63 dB, including the DOE, focusing lens and the packaged fiber array.
© (2006) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Fung J. Wen and Po S. Chung "2D optical beam splitter using diffractive optical elements (DOE)", Proc. SPIE 6351, Passive Components and Fiber-based Devices III, 63510U (3 October 2006); https://doi.org/10.1117/12.691058
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Cited by 3 scholarly publications.
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KEYWORDS
Diffractive optical elements

Diffraction

Beam splitters

Diffraction gratings

Fiber to the x

Polarization

Fiber couplers

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